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* feat(swift): review for chapter_computational_complexity * feat(swift): review for chapter_data_structure * feat(swift): review for chapter_array_and_linkedlist * feat(swift): review for chapter_stack_and_queue * feat(swift): review for chapter_hashing * feat(swift): review for chapter_tree * feat(swift): add codes for heap article * feat(swift): review for chapter_heap * feat(swift): review for chapter_graph * feat(swift): review for chapter_searching * feat(swift): review for chapter_sorting * feat(swift): review for chapter_divide_and_conquer * feat(swift): review for chapter_backtracking * feat(swift): review for chapter_dynamic_programming * feat(swift): review for chapter_greedy * feat(swift): review for utils * feat(swift): update ci tool * feat(swift): trailing closure * feat(swift): array init * feat(swift): map index
36 lines
935 B
Swift
36 lines
935 B
Swift
/**
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* File: climbing_stairs_constraint_dp.swift
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* Created Time: 2023-07-15
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* Author: nuomi1 (nuomi1@qq.com)
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*/
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/* 带约束爬楼梯:动态规划 */
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func climbingStairsConstraintDP(n: Int) -> Int {
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if n == 1 || n == 2 {
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return 1
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}
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// 初始化 dp 表,用于存储子问题的解
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var dp = Array(repeating: Array(repeating: 0, count: 3), count: n + 1)
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// 初始状态:预设最小子问题的解
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dp[1][1] = 1
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dp[1][2] = 0
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dp[2][1] = 0
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dp[2][2] = 1
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// 状态转移:从较小子问题逐步求解较大子问题
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for i in 3 ... n {
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dp[i][1] = dp[i - 1][2]
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dp[i][2] = dp[i - 2][1] + dp[i - 2][2]
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}
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return dp[n][1] + dp[n][2]
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}
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@main
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enum ClimbingStairsConstraintDP {
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/* Driver Code */
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static func main() {
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let n = 9
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let res = climbingStairsConstraintDP(n: n)
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print("爬 \(n) 阶楼梯共有 \(res) 种方案")
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}
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}
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